Finite Element Analysis of Elastic-Plastic Solids under Vickers Indentation: Surface Deformation
Publish place: The Iranian Journal of Materials Forming، Vol: 3، Issue: 1
Publish Year: 1395
Type: Journal paper
Language: English
View: 428
This Paper With 11 Page And PDF Format Ready To Download
- Certificate
- I'm the author of the paper
Export:
Document National Code:
JR_IJMF-3-1_001
Index date: 28 December 2016
Finite Element Analysis of Elastic-Plastic Solids under Vickers Indentation: Surface Deformation abstract
Finite element modeling has been used to study the development of surface deformation during indentation with a Vickers indenter. A wide range of materials with different elastic modulus and yield stresses are examined. Results show that in a pyramidal indentation process, for a perfectly plastic material, sinking-in during loading can be changed to pile-up in unloading. This phenomenon depends on the elastic modulus to yield stress ratio. Results also indicate that the amount of pile-up cannot be related solely to the strain-hardening exponent, as often assumed. Rather, after initially sinking-in at small depths of penetration, the pile-up for many materials evolves and increases gradually as the indenter is driven into the material. It is shown that the ratio of the plastic volume radius to the indentation depth is nearly constant during loading and it is a function of the yield stress and the Young modulus. Experimental verification in loading and unloading is carried out with the results of Alcala et al. (Acta Materialia, 2000, pp. 3451).
Finite Element Analysis of Elastic-Plastic Solids under Vickers Indentation: Surface Deformation Keywords:
Finite Element Analysis of Elastic-Plastic Solids under Vickers Indentation: Surface Deformation authors
Ali Nayebi
Department of Mechanical Engineering, Shiraz University, Shiraz, Iran Shiraz University